@inproceedings{19460995482a4ccfaae9fad0d7e4e294,
title = "Implementation and validation of the jet flame model using C++ open source codes computational fluid dynamics software",
abstract = "The open source code software, OpenFOAM, based on the computational fluid dynamics (CFD) was implemented to simulate the methane jet flame. The large eddy simulation (LES) of turbulence model was written using C++ language. The mixture fraction approach and infinitely-fast chemistry assumption was combined with this LES turbulence model. The results of jet flame simulation were validated with Yi Zeng et al., (2011) experiments based on flame lengths under flow rate and pressure conditions of 5.95-23.81 mg/s and 50-100 kPa, respectively. It was found that an average error of flame lengths obtained from the developed CFD model was 8.57\% when referred the 1\% O2 remaining was a flame shape.",
keywords = "CFD, Flame length, Jet flame, LES, OpenFOAM",
author = "Panit Kamma and Chakrit Suvanjumrat",
note = "Publisher Copyright: {\textcopyright} (2015) Trans Tech Publications, Switzerland.; International Conference on Machining, Materials and Mechanical Technologies, IC3MT 2014 ; Conference date: 31-08-2014 Through 05-09-2014",
year = "2015",
doi = "10.4028/www.scientific.net/KEM.656-657.676",
language = "English",
isbn = "9783038354956",
series = "Key Engineering Materials",
publisher = "Trans Tech Publications Ltd",
pages = "676--681",
editor = "Jyh-Chen Chen and Usuki Hiroshi and Sheng-Wei Lee and Yiin-Kuen Fuh",
booktitle = "Recent Development in Machining, Materials and Mechanical Technologies",
}